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Updated: Aug 18, 2026

In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Value of rest thallium-201/technetium-99m sestamibi scans and dobutamine echocardiography for detecting myocardial
P Marzullo1, O Parodi, B Reisenhofer
1CNR Institute of Clinical Physiology, Pisa, Italy.
Insights
This study compared radioisotopic and echocardiographic methods to assess myocardial viability. Delayed thallium-201 scans and dobutamine echocardiography effectively identified viable myocardium for predicting post-revascularization recovery.
Area of Science:
- Cardiology
- Nuclear Medicine
- Echocardiography
Background:
- Assessing myocardial viability is crucial for predicting functional recovery after revascularization.
- The comparative accuracy of radioisotopic and echocardiographic markers remains to be fully elucidated.
Purpose of the Study:
- To evaluate the relationship between radioisotopic (thallium-201, technetium-99m sestamibi) and echocardiographic (dobutamine stress) markers of myocardial viability.
- To determine the predictive value of these markers for post-revascularization functional recovery.
Main Methods:
- 14 patients with ventricular dysfunction underwent rest thallium-201 scintigraphy, technetium-99m sestamibi scintigraphy, dobutamine echocardiography, and quantitative coronary angiography.
- Myocardial uptake was quantified, and dobutamine echocardiography assessed wall motion using a segmental model.
- Segments were categorized based on coronary stenosis and baseline function.
Main Results:
- Segments with improved wall motion post-dobutamine showed higher uptake of thallium-201 and sestamibi compared to unresponsive segments.
- Delayed thallium-201 uptake and dobutamine echocardiography demonstrated significant differences in activity between viable and non-viable segments.
- Both delayed thallium-201 scans and dobutamine echocardiography exhibited good sensitivity and specificity for detecting viable myocardium.
Conclusions:
- Delayed thallium-201 scintigraphy and dobutamine echocardiography are effective tools for identifying myocardial viability.
- These methods show promise in predicting functional recovery following revascularization procedures.
Abstract:
The relation between radioisotopic and echocardiographic markers of myocardial viability and postrevascularization recovery of function is still to be defined. To this purpose, 14 patients (11 men, 3 women, aged 35 to 64 years, mean 54 +/- 7) with ventricular dysfunction were studied by a multiparametric approach. Each patient underwent, on separate days, rest thallium-201 and technetium-99m sestamibi scintigraphy, dobutamine echocardiography and coronary angiography. Coronary angiography was analyzed by a quantitative approach. Thallium uptake at rest was quantified from planar early (10-minute) and delayed (16-hour) thallium-201 images and expressed as a percentage of maximal activity in each projection using a 13-segment model. Sestamibi uptake was expressed in the same way. Dobutamine (up to 10 micrograms/kg/min) echocardiography was analyzed using a score index ranging from 1 (normokinesia) to 4 (dyskinesia) and a similar segmental model. Before revascularization 50 segments were grouped as normal (coronary stenosis < 50% and normal function, group 1); of the remaining 132 segments with > 50% coronary stenosis, 57 had normal wall motion (group 2) and 75 showed regional dyssynergies (group 3). Early and delayed thallium-201 regional percent activities did not differ in group 1 and in group 2 but were significantly less in group 3 segments. Sestamibi percent activity was more in group 1 and significantly reduced both in group 2 and 3 segments. Segments with improved wall motion after dobutamine had more early, delayed thallium-201 and sestamibi percent activities than unresponsive segments. Postrevascularization echocardiography was performed in all patients. Delayed thallium-201 scans and dobutamine echocardiography showed good sensitivity and specificity in detecting viable myocardium. (ABSTRACT TRUNCATED AT 250 WORDS)
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